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一种银配位超分子凝胶的结构表征与化学反应

Structural characterization and chemical response of a Ag-coordinated supramolecular gel.

作者信息

Liu Qingtao, Wang Yinglin, Li Wen, Wu Lixin

机构信息

Key Laboratory for Supramolecular Structure and Materials of Ministry of Education, Jilin University, Changchun 130012, People's Republic of China.

出版信息

Langmuir. 2007 Jul 17;23(15):8217-23. doi: 10.1021/la700364t. Epub 2007 Jun 20.

Abstract

Supramolecular gels exhibit potential applications in the areas of sensors, nanodevices, drug and catalyst carriers, and so on. To develop a novel organogel with a multiresponse, we designed a component molecule bearing a pyridyl group for metal coordination and an amide group for the formation of intermolecular hydrogen bonding. A complex building block with a symmetrical structure was selectively constructed by the coordination of a silver cation to the organic component. The coordination existing in the complex and the hydrogen bonding existing between complexes were examined by IR, Raman, and 1H NMR spectroscopy. The gel formation and phase transition were examined by viscosity and differential scanning calorimetry measurements. The selection of metal ions for the formation of a gel has proved to be crucial as only the complex of a binary coordinated metal ion, Ag+, was found to form a gel structure. From the band shift of the L1 solution with different amounts of silver ion, the binding ratio of silver ion to L1 was estimated to be 1:2 and the calculated stability constant was 3.6 x 10(8) M(-2). On the basis of the analysis of X-ray diffraction and transmission electron microscopy results, we proposed a possible stacking structure of the complex in the fibrous aggregates. Of interest is that the organogel exhibits a 3-D network structure of a beltlike fiber composed of ordered lamellar arrangements of the coordinated complex and shows a rapid response to wide chemical stimulations such as anions I-, Br-, and Cl-, gases such as H(2)S and NH(3), and a change of pH.

摘要

超分子凝胶在传感器、纳米器件、药物和催化剂载体等领域展现出潜在应用。为了开发一种具有多重响应的新型有机凝胶,我们设计了一种含有用于金属配位的吡啶基和用于形成分子间氢键的酰胺基的组分分子。通过银阳离子与有机组分的配位选择性地构建了具有对称结构的复合结构单元。通过红外光谱、拉曼光谱和1H核磁共振光谱研究了配合物中存在的配位作用以及配合物之间存在的氢键。通过粘度和差示扫描量热法测量研究了凝胶的形成和相变。已证明金属离子对凝胶形成的选择至关重要,因为仅发现二元配位金属离子Ag+的配合物能形成凝胶结构。根据不同银离子量的L1溶液的谱带位移,估计银离子与L1的结合比为1:2,计算得到的稳定常数为3.6×10(8) M(-2)。基于对X射线衍射和透射电子显微镜结果的分析,我们提出了配合物在纤维聚集体中的一种可能的堆积结构。有趣的是,该有机凝胶呈现出由配位配合物的有序层状排列组成的带状纤维的三维网络结构,并对诸如阴离子I-、Br-和Cl-、气体如H(2)S和NH(3)以及pH变化等广泛的化学刺激表现出快速响应。

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